[1] |
Hu Zhiyong(胡志勇). Development trends of cooling technique for today's electronic equipment [J]. Electronics Machinery Engineering(电子机械工程), 1999(1): 2-5
|
[2] |
Agyenim F, Hewitt N, Eames P. A review of materials, heat transfer and phase change problem formulation for latent heat thermal energy storage systems (LHTESS)[J]. Renewable and Sustainable Energy Reviews, 2010, 14(2): 615-628
|
[3] |
Zhang Fang(张芳), Wang Xiaoqun(王小群), Du Shanyi(杜善义). Investigation on application of phase change thermal control in electronic devices [J]. Chinese Journal of Electronic Devices(电子器件), 2007,30(5):1939-1942
|
[4] |
Tan F L, Tso C P. Cooling of mobile electronic devices using phase change materials [J]. Applied Thermal Engineering, 2004,24(2/3): 159-169
|
[5] |
Baby R, Balaji C. Experimental investigations on phase change material based finned heat sinks for electronic equipment cooling [J]. International Journal of Heat and Mass Transfer, 2012, 55(5/6): 1642-1649
|
[6] |
Wang Jieli(王杰利), Qu Zhiguo(屈治国). Experimental study of hybrid heat sink sintered with mental foam filled with phase change materials [J]. Journal of Engineering Thermophysics(工程热物理学报), 2011 (2):295-298
|
[7] |
Dutil Y, Rousse D R, Salah N B. A review on phase-change materials: mathematical modeling and simulations[J]. Renewable and Sustainable Energy Reviews, 2011, 15(1): 112-130
|
[8] |
Xavier Py, Regis Olives, Sylvain Mauran. Paraffin/porous graphite matrix composite as a high and constant power thermal storage material [J]. Heat and Mass Transfer, 2001,44(14):2727-2737
|
[9] |
Marin J M, Zalba B, Cabeza L F. Improvement of a thermal energy storage using plates with paraffin-graphite composite [J]. Heat and Mass Transfer, 2005,48(12):2561-2570
|
[10] |
Xia L, Zhang P, Wang R Z. Preparation and thermal characterization of expanded graphite/paraffin composite phase change material[J]. Carbon, 2010, 48(9): 2538-2548
|
[11] |
Sar1 A, Karaipekli A. Thermal conductivity and latent heat thermal energy storage characteristics of paraffin/expanded graphite composite as phase change material[J]. Applied Thermal Engineering, 2007, 27(8/9): 1271-1277
|
[12] |
Gao Xuenong(高学农), Li Delun(李得伦), Sun Tao(孙滔), Cao Xin(曹昕), He Wenxiang(何文祥). Paraffin/expanded graphite composite phase change material of electronic radiator temperature control performance [J]. Journal of South China University of Technology(华南理工大学学报),2012,40(1):7-12
|
[13] |
Xiao Min, Feng Bo, Gong Kecheng. Preparation and performance of shape stabilized phase change thermal storage materials with high thermal conductivity [J]. Energy Conversion and Management, 2002,43(1):103-108
|
[14] |
Gao Xuenong(高学农), Liu Xin(刘欣), Sun Tao(孙滔), Ding Cong(丁聪), Huang Zhaowen(黄昭雯). Research on the thermal management performance of electronic chip with composite phase change material [J]. Journal of Chemical Engineering of Chinese Universities(高校化学工程学报), 2013,27(2):187-192
|
[15] |
Alawadhi E M, Amon C H. Performance analysis of an enhanced PCM thermal control unit//The Seventh Intersociety Conference on Thermal and Thermomechanical Phenomena in Electronic System[C]. Las Vegas, Nevada, 2000:283-289
|
[16] |
Hong S T, Herling D R. Open-cell aluminum foams filled with phase change material as compact heat sinks [J]. Scripta Materialia, 2006,55(10):887-890
|
[17] |
Yang R, Xu H, Zhang Y. Preparation, physical property and thermal physical property of phase change microcapsule slurry and phase change emulsion[J]. Solar Energy Materials and Solar Cells, 2003, 80(4): 405-416
|
[18] |
Zhao W, Neti S, Oztekin A. Heat transfer analysis of encapsulated phase change materials[J]. Applied Thermal Engineering, 2013, 50(1): 143-151
|
[19] |
Zhang Buning(张步宁), Cui Yanqi(崔艳琦). Preparation and properties of expended graphite phase change composite for thermal storage [J]. Guangzhou Chemical Industry(广州化工), 2011, 39(15):70-72
|
[20] |
Zhang Zhanguo, Long Na, Fang Xiaoming. Study on performance of paraffin/expanded graphite composite phase change material [J]. Journal of Functional Materials, 2009,40(8):1313-1315
|